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March 5, 2026European Journal of Human Genetics1 citationsOpen Access

Tumor patterns and cancer risk in carriers of TP53 exonic germline variants that alter mRNA splicing

DSDeborah SchöneggerEMEmilie MontellierSBSandrine Blanchet

Key Points

  • The study aims to investigate how abnormal RNA splicing affects cancer risk in carriers of TP53 variants.
  • Re-evaluated exonic single-nucleotide variants (SNVs) for spliceogenic effects.
  • Utilized SpliceAI predictions, in-vitro minigene assays, and TCGA tumor RNA-seq analysis.
  • Assessed genotype-phenotype correlations using clinical data from various databases.
  • Identified 58 spliceogenic exonic SNVs in the TP53 gene.
  • Confirmed aberrant splicing for 15 out of 17 tested variants.
  • Carriers of spliceogenic SNVs exhibited earlier cancer onset and LFS-signature tumors.

Abstract

Abstract Abnormal RNA splicing is an underrecognized driver of pathogenicity in germline TP53 — the cause of Li–Fraumeni syndrome (LFS). We re-evaluated exonic single-nucleotide variants (SNVs) that yield missense or synonymous changes for spliceogenic effects by integrating SpliceAI prediction, in-vitro minigene assays, and analysis of tumor RNA-seq from TCGA, and assessed genotype-phenotype correlations using clinical data from multiple databases and national registries. We identified 58 spliceogenic exonic SNVs (SE-SNVs) across the TP53 gene (40 missense, 18 synonymous). Experimental validation confirmed aberrant splicing for 15 out of 17 tested variants, most often through cryptic splice-site activation that introduced frameshifts and premature termination. Clinically, carriers of SE-SNVs previously considered as mild or of low-pathogenicity by protein-based assays showed earlier onset and LFS-signature cancers, indicating that splicing disruption can override amino-acid effects. The recurrent c.375 G > A (p.(Thr125 = )) showed heterogeneous effect: with both childhood/adolescent and adult onset, consistent with partial, variable retention of canonical splicing. These data reveal a substantial burden of spliceogenic pathogenicity in TP53 and strong support integrating splicing prediction, functional validation, and transcript-level evidence into variant interpretation and risk stratification in LFS.

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Cite This Study

Schönegger et al. (2026) studied this question.

synapsesocial.com/papers/69a91e65d6127c7a504c266bhttps://doi.org/10.1038/s41431-026-02061-6
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